修复了 TPV 的一些错误,包括闭包等
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206
App/lib/core/Handles/HandlesWith.py
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206
App/lib/core/Handles/HandlesWith.py
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from __future__ import annotations
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from typing import TYPE_CHECKING
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if TYPE_CHECKING:
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from lib.core.translator import Translator
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from lib.core.Handles.HandlesBase import BaseHandle
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import ast
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import llvmlite.ir as ir
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class WithHandle(BaseHandle):
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def _ResolveInheritedMethod(self, ClassName: str, MethodName: str, Gen: "Translator.LlvmGen") -> tuple[str | None, "ir.Function | None"]:
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"""沿继承链查找方法,返回 (定义方法的类名, 函数对象)
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当子类未覆写 __enter__/__exit__ 等方法时,沿 Gen.class_parent 链查找父类实现。
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_generate_inherited_method_wrappers 只为 class_methods[ClassName] 中的方法生成包装,
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不包括父类独有方法,因此 with 语句需要单独处理继承查找。
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"""
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# 先检查子类自身
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FullName: str = f'{ClassName}.{MethodName}'
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func = Gen._find_function(FullName) if hasattr(Gen, '_find_function') else Gen.functions.get(FullName)
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if func:
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return (ClassName, func)
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# 沿继承链查找
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p: str | None = Gen.class_parent.get(ClassName) if hasattr(Gen, 'class_parent') else None
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while p:
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parent_full: str = f'{p}.{MethodName}'
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parent_func = Gen._find_function(parent_full) if hasattr(Gen, '_find_function') else Gen.functions.get(parent_full)
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if parent_func:
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return (p, parent_func)
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p = Gen.class_parent.get(p)
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return (None, None)
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def _HandleWithLlvm(self, Node: ast.With) -> None:
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Gen: "Translator.LlvmGen" = self.Trans.LlvmGen
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for item in Node.items:
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context_expr: ast.expr = item.context_expr
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asname: str | None = None
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target: ast.expr | None = getattr(item, 'optional_vars', getattr(item, 'target', getattr(item, 'asname', None)))
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if target and isinstance(target, ast.Name):
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asname = target.id
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ClassName: str | None = None
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if isinstance(context_expr, ast.Call):
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if isinstance(context_expr.func, ast.Name):
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ClassName = context_expr.func.id
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elif isinstance(context_expr.func, ast.Attribute):
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ClassName = context_expr.func.attr
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if ClassName and ClassName not in Gen.structs:
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SymInfo: "SymbolTable.SymbolInfo" = self.Trans.SymbolTable.lookup(ClassName)
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if SymInfo:
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if SymInfo.IsStruct or SymInfo.IsRenum:
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pass
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else:
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ClassName = None
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else:
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ClassName = None
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elif isinstance(context_expr, ast.Name):
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VarName: str = context_expr.id
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if VarName in Gen.var_struct_class:
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ClassName = Gen.var_struct_class[VarName]
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ctx_val: ir.Value | None = self.HandleExprLlvm(context_expr)
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if not ctx_val:
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continue
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original_ctx_val: ir.Value = ctx_val
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if ClassName and isinstance(ctx_val.type, ir.PointerType):
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pointee: ir.Type = ctx_val.type.pointee
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if isinstance(pointee, (ir.LiteralStructType, ir.IdentifiedStructType)):
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found: tuple[str, ir.Type] | None = Gen.find_struct_by_pointee(pointee)
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if found:
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CN: str = found[0]
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ST: ir.Type = found[1]
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ClassName = CN
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StructPtrType: ir.PointerType | None = ir.PointerType(Gen.structs[ClassName]) if ClassName and ClassName in Gen.structs else None
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if StructPtrType and isinstance(ctx_val.type, ir.PointerType) and ctx_val.type.pointee != Gen.structs.get(ClassName):
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ctx_val = Gen.builder.bitcast(ctx_val, StructPtrType, name="cast_with_ctx")
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ctx_alloca: ir.AllocaInstr = Gen._allocaEntry(ctx_val.type, name="__with_ctx")
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Gen._store(ctx_val, ctx_alloca)
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Gen._UnregisterTempPtr(ctx_val)
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if ClassName:
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Gen.var_struct_class['__with_ctx'] = ClassName
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Gen._var_to_heap_ptr['__with_ctx'] = ctx_val
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original_asname_heap_ptr: ir.Value | None = Gen._var_to_heap_ptr.get(asname) if asname else None
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ctx_is_var_ref: bool = isinstance(context_expr, ast.Name)
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enter_result: ir.Value | None = None
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if ClassName:
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# 沿继承链查找 __enter__(子类可能未覆写,使用父类实现)
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enter_class, enter_func = self._ResolveInheritedMethod(ClassName, '__enter__', Gen)
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if enter_func is not None:
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ctx_Loaded: ir.Value = Gen._load(ctx_alloca, name="__with_ctx")
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# 父类方法需要 self 为父类指针类型,bitcast 子类指针
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if enter_class != ClassName and enter_class in Gen.structs:
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parent_ptr_type = ir.PointerType(Gen.structs[enter_class])
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if ctx_Loaded.type != parent_ptr_type:
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ctx_Loaded = Gen.builder.bitcast(ctx_Loaded, parent_ptr_type, name="cast_enter_self")
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enter_call: ir.CallInstr = Gen.builder.call(enter_func, [ctx_Loaded], name="call_enter")
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enter_result = enter_call
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if isinstance(enter_call.type, ir.PointerType):
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pointee: ir.Type = enter_call.type.pointee
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if isinstance(pointee, ir.PointerType) and isinstance(pointee.pointee, (ir.LiteralStructType, ir.IdentifiedStructType)):
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enter_result = Gen._load(enter_call, name="enter_deref")
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elif self._is_char_pointer(enter_call) and StructPtrType:
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enter_result = Gen.builder.bitcast(enter_call, StructPtrType, name="cast_enter")
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if asname and enter_result:
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if isinstance(enter_result.type, ir.PointerType) and isinstance(enter_result.type.pointee, (ir.LiteralStructType, ir.IdentifiedStructType)):
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found: tuple[str, ir.Type] | None = Gen.find_struct_by_pointee(enter_result.type.pointee)
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if found:
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CN: str = found[0]
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ST: ir.Type = found[1]
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Gen.var_struct_class[asname] = CN
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Gen._var_to_heap_ptr[asname] = enter_result
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Gen._register_local_heap_ptr(enter_result, VarName=asname)
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if asname in Gen._reg_values:
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OldVal: ir.Value = Gen._reg_values[asname]
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var: ir.AllocaInstr = Gen._allocaEntry(OldVal.type, name=asname)
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Gen._store(OldVal, var)
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Gen.variables[asname] = var
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del Gen._reg_values[asname]
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if asname in Gen.variables and Gen.variables[asname] is not None:
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VarPtr: ir.Value = Gen.variables[asname]
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if VarPtr.type.pointee == enter_result.type:
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Gen._store(enter_result, VarPtr)
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elif isinstance(VarPtr.type.pointee, ir.PointerType) and isinstance(enter_result.type, ir.PointerType):
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CastedVal: ir.Value = Gen.builder.bitcast(enter_result, VarPtr.type.pointee, name=f"cast_{asname}")
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Gen._store(CastedVal, VarPtr)
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else:
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NewVar: ir.AllocaInstr = Gen._alloca(enter_result.type, name=asname)
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Gen._store(enter_result, NewVar)
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Gen.variables[asname] = NewVar
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else:
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Gen._reg_values[asname] = enter_result
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Gen.variables[asname] = None
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# 如果类有 __provides__,自动生成 push 代码
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if ClassName and ClassName in Gen.class_provides:
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# 编译期检查: with provider 栈深度是否超过 _MAX_PROVIDER_DEPTH (32)
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# _with_provides_stack 只反映当前嵌套路径,顺序执行的 with 会在退出时弹栈
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current_depth: int = sum(len(pl) for pl in Gen._with_provides_stack)
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new_fields: int = len(Gen.class_provides[ClassName])
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if current_depth + new_fields > 32:
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raise SyntaxError(
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f"[TransPyC] with provider stack overflow at line {Node.lineno}: "
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f"current depth {current_depth} + new {new_fields} fields > max 32. "
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f"Class '{ClassName}' provides too many fields or with nesting too deep."
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)
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# 编译期压栈:记录当前 with 上下文提供的字段名,供 __require_must__ 静态检查
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Gen._with_provides_stack.append(Gen.class_provides[ClassName])
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ctx_Loaded: ir.Value = Gen._load(ctx_alloca, name="__with_ctx")
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ctx_i8: ir.Value = ctx_Loaded
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if isinstance(ctx_Loaded.type, ir.PointerType) and ctx_Loaded.type != ir.PointerType(ir.IntType(8)):
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ctx_i8 = Gen.builder.bitcast(ctx_Loaded, ir.PointerType(ir.IntType(8)), name="ctx_push_i8")
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for field_name in Gen.class_provides[ClassName]:
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field_str: ir.Value = Gen._create_string_global(field_name)
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push_func = Gen.functions.get('_push_provider')
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if push_func:
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Gen.builder.call(push_func, [field_str, ctx_i8], name="call_push_provider")
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self.Trans.VarScopes.append({})
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if asname:
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self.Trans.VarScopes[-1][asname] = True
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self.HandleBodyLlvm(Node.body)
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if self.Trans.VarScopes:
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self.Trans.VarScopes.pop()
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# 如果类有 __provides__,自动生成 pop 代码
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if ClassName and ClassName in Gen.class_provides:
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for _ in Gen.class_provides[ClassName]:
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pop_func = Gen.functions.get('_pop_provider')
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if pop_func:
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Gen.builder.call(pop_func, [], name="call_pop_provider")
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# 编译期弹栈
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if Gen._with_provides_stack:
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Gen._with_provides_stack.pop()
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if ClassName:
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# 沿继承链查找 __exit__(子类可能未覆写,使用父类实现)
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exit_class, exit_func = self._ResolveInheritedMethod(ClassName, '__exit__', Gen)
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if exit_func is not None:
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ctx_Loaded: ir.Value = Gen._load(ctx_alloca, name="__with_ctx")
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# 父类方法需要 self 为父类指针类型,bitcast 子类指针
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if exit_class != ClassName and exit_class in Gen.structs:
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parent_ptr_type = ir.PointerType(Gen.structs[exit_class])
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if ctx_Loaded.type != parent_ptr_type:
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ctx_Loaded = Gen.builder.bitcast(ctx_Loaded, parent_ptr_type, name="cast_exit_self")
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Gen.builder.call(exit_func, [ctx_Loaded], name="call_exit")
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Gen._unregister_local_heap_ptr(original_ctx_val)
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if ctx_val is not original_ctx_val:
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Gen._unregister_local_heap_ptr(ctx_val)
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if ctx_is_var_ref and original_asname_heap_ptr and original_asname_heap_ptr is not original_ctx_val and original_asname_heap_ptr is not ctx_val:
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Gen._unregister_local_heap_ptr(original_asname_heap_ptr)
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if '__with_ctx' in Gen._var_to_heap_ptr:
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del Gen._var_to_heap_ptr['__with_ctx']
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if asname and enter_result is not None and isinstance(ctx_val.type, ir.PointerType) and isinstance(enter_result.type, ir.PointerType):
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ctx_int: ir.Value = Gen.builder.ptrtoint(ctx_val, ir.IntType(64), name="ctx_int")
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enter_int: ir.Value = Gen.builder.ptrtoint(enter_result, ir.IntType(64), name="enter_int")
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same_ptr: ir.Value = Gen.builder.icmp_unsigned('==', ctx_int, enter_int, name="same_ptr_check")
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with_free_bb: ir.Block = Gen.func.append_basic_block("with_free_ctx")
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with_skip_bb: ir.Block = Gen.func.append_basic_block("with_skip_free")
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Gen.builder.cbranch(same_ptr, with_skip_bb, with_free_bb)
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Gen.builder.position_at_start(with_free_bb)
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raw: ir.Value = Gen.builder.bitcast(ctx_val, ir.PointerType(ir.IntType(8)), name="with_free_cast")
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free_func: ir.Function = Gen.get_or_declare_c_func('free', ir.FunctionType(ir.VoidType(), [ir.PointerType(ir.IntType(8))]))
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Gen.builder.call(free_func, [raw])
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Gen.builder.branch(with_skip_bb)
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Gen.builder.position_at_start(with_skip_bb)
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Gen._unregister_local_heap_ptr(enter_result)
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Gen._unregister_local_heap_ptr(original_ctx_val)
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elif isinstance(ctx_val.type, ir.PointerType):
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raw: ir.Value = Gen.builder.bitcast(ctx_val, ir.PointerType(ir.IntType(8)), name="with_free_cast")
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free_func: ir.Function = Gen.get_or_declare_c_func('free', ir.FunctionType(ir.VoidType(), [ir.PointerType(ir.IntType(8))]))
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Gen.builder.call(free_func, [raw])
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Gen._unregister_local_heap_ptr(original_ctx_val)
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